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Seismic Design of a Single Bored Tunnel: Longitudinal Deformations and Seismic Joints

机译:单钻孔隧道的地震设计:纵向变形和地震关节

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The large diameter bored tunnel passing through rock and alluvial deposits subjected to seismic loading is analyzed for estimating longitudinal deformations and member forces on the segmental tunnel liners. The project site has challenges including high hydrostatic pressure, variable ground profile and high seismic loading. To ensure the safety of segmental tunnel liner from the seismic demands, the performance-based two-level design earthquake approach, Functional Evaluation Earthquake and Safety Evaluation Earthquake, has been adopted. The longitudinal tunnel and ground response seismic analyses are performed using a three-dimensional quasi-static linear elastic and nonlinear elastic discrete beam-spring elements to represent segmental liner and ground spring, respectively. Three components (longitudinal, transverse and vertical) of free-field ground displacement-time histories evaluated from site response analyses considering wave passage effects have been applied at the end support of the strain-compatible ground springs. The result of the longitudinal seismic analyses suggests that seismic joint for the mitigation measure requiring the design deflection capacity of 5-7.5 cm is to be furnished at the transition zone between hard and soft ground condition where the maximum member forces on the segmental liner (i.e., axial, shear forces and bending moments) are induced. The paper illustrates how detailed numerical analyses can be practically applied to evaluate the axial and curvature deformations along the tunnel alignment under difficult ground conditions and to provide the seismic joints at proper locations to effectively reduce the seismic demands below the allowable levels.
机译:分析了穿过岩石和冲积沉积物的大直径钻孔隧道,用于估计节段隧道衬里上的纵向变形和成员力。该项目现场具有挑战,包括高静水压力,可变地面型材和高地震载荷。为确保从地震要求的节段隧道衬里的安全性,采用了基于性能的两级设计地震方法,功能评估地震和安全评估地震。使用三维准静电线性弹性和非线性弹性离散束弹簧元件来执行纵向隧道和地面响应地震分析,以分别表示分段衬垫和地弹簧。考虑波通道效应的现场响应分析评估的自由场地下位移时间历史的三种组分(纵向,横向和垂直)已经应用于应变兼容的地面弹簧的最终支撑。纵向地震分析的结果表明,需要设计偏转容量为5-7.5cm的缓解措施的抗震接头在平台衬垫上的最大成员力(即诱导,轴向,剪切力和弯曲力矩)。本文说明了如何实际应用的详细数值分析,以评估沿着困难的地面条件下的隧道对准的轴向和曲率变形,并在适当位置提供地震关节,以有效地降低允许水平以下的地震要求。

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